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鉴定 Hedgehog 酰基转移酶中对 Sonic Hedgehog 棕榈酰化至关重要的保守区域和残基。

Identification of conserved regions and residues within Hedgehog acyltransferase critical for palmitoylation of Sonic Hedgehog.

机构信息

Cell Biology Program, Memorial Sloan-Kettering Cancer Center, New York, New York, United States of America.

出版信息

PLoS One. 2010 Jun 23;5(6):e11195. doi: 10.1371/journal.pone.0011195.

Abstract

BACKGROUND

Sonic hedgehog (Shh) is a palmitoylated protein that plays key roles in mammalian development and human cancers. Palmitoylation of Shh is required for effective long and short range Shh-mediated signaling. Attachment of palmitate to Shh is catalyzed by Hedgehog acyltransferase (Hhat), a member of the membrane bound O-acyl transferase (MBOAT) family of multipass membrane proteins. The extremely hydrophobic composition of MBOAT proteins has limited their biochemical characterization. Except for mutagenesis of two conserved residues, there has been no structure-function analysis of Hhat, and the regions of the protein required for Shh palmitoylation are unknown.

METHODOLOGY/PRINCIPAL FINDINGS: Here we undertake a systematic approach to identify residues within Hhat that are required for protein stability and/or enzymatic activity. We also identify a second, novel MBOAT homology region (residues 196-234) that is required for Hhat activity. In total, ten deletion mutants and eleven point mutants were generated and analyzed. Truncations at the N- and C-termini of Hhat yielded inactive proteins with reduced stability. Four Hhat mutants with deletions within predicted loop regions and five point mutants retained stability but lost palmitoylation activity. We purified two point mutants, W378A and H379A, with defective Hhat activity. Kinetic analyses revealed alterations in apparent K(m) and V(max) for Shh and/or palmitoyl CoA, changes that likely explain the catalytic defects observed for these mutants.

CONCLUSIONS/SIGNIFICANCE: This study has pinpointed specific regions and multiple residues that regulate Hhat stability and catalysis. Our findings should be applicable to other MBOAT proteins that mediate lipid modification of Wnt proteins and ghrelin, and should serve as a model for understanding how secreted morphogens are modified by palmitoyl acyltransferases.

摘要

背景

Sonic hedgehog(Shh)是一种棕榈酰化蛋白,在哺乳动物发育和人类癌症中发挥关键作用。Shh 的棕榈酰化对于有效的长程和短程 Shh 介导的信号传递是必需的。Shh 的棕榈酸酯与 Hedgehog acyltransferase(Hhat)的催化作用有关,Hhat 是多通道膜蛋白的膜结合 O-酰基转移酶(MBOAT)家族的成员。MBOAT 蛋白的极度疏水性限制了它们的生化特性。除了对两个保守残基进行诱变外,尚未对 Hhat 进行结构功能分析,也不知道 Shh 棕榈酰化所需的蛋白质区域。

方法/主要发现: 在这里,我们采用系统的方法来鉴定 Hhat 中必需的残基,这些残基对于蛋白质稳定性和/或酶活性是必需的。我们还鉴定了第二个新的 MBOAT 同源区(残基 196-234),该区域对于 Hhat 活性是必需的。总共生成并分析了十个缺失突变体和十一个点突变体。Hhat 的 N-和 C-末端截断产生了稳定性降低的无活性蛋白质。预测的环区缺失的四个 Hhat 突变体和五个点突变体保留了稳定性,但失去了棕榈酰化活性。我们纯化了两个具有缺陷 Hhat 活性的点突变体 W378A 和 H379A。动力学分析揭示了 Shh 和/或棕榈酰辅酶 A 的表观 K(m)和 V(max)的改变,这些改变可能解释了这些突变体观察到的催化缺陷。

结论/意义: 这项研究精确定位了调节 Hhat 稳定性和催化作用的特定区域和多个残基。我们的发现应该适用于调节 Wnt 蛋白和 ghrelin 脂质修饰的其他 MBOAT 蛋白,并应作为理解分泌形态发生因子如何被棕榈酰基转移酶修饰的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a180/2890405/55492292e9e6/pone.0011195.g001.jpg

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